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氩激光焊接的牛异种移植物吻合术。

Argon laser-welded bovine heterograft anastomoses.

作者信息

Mueller M P, Kopchok G E, Tabbara M R, Cavaye D M, White R A

机构信息

Department of Surgery, Harbor-UCLA Medical Center, Torrance, California.

出版信息

J Clin Laser Med Surg. 1993 Feb;11(1):1-5. doi: 10.1089/clm.1993.11.1.

DOI:10.1089/clm.1993.11.1
PMID:10148535
Abstract

UNLABELLED

This study evaluated the strength of laser-welded arteriovenous shunts established using St. Jude BioPolyMeric vascular grafts. The arterial anastomoses of the biological graft were laser welded with and without the addition of soluble collagen or fibrin sealant. In four dogs, 16 arteriovenous grafts were implanted between the femoral artery and vein or the carotid artery and jugular vein using a 6 cm long, 4 mm internal diameter prosthesis. The 16 arterial anastomoses were evenly divided into four groups: sutured control, laser welded (LW), LW with soluble collagen applied immediately before and during welding, and LW with fibrin sealant applied after welding. All arterial control and venous anastomoses were sutured using continuous 6-0 polypropylene suture. All LW anastomoses were initially divided into six 5 mm long segments using six evenly spaced 6-0 polypropylene stay sutures. Each segment was laser welded using 15 to 18 5-sec pulses of the 0.5 W (7.5 W/cm 2) argon laser energy delivered via a 300 mum fiber while cooling the tissue with slow-drip saline irrigation. Blood flow was established and maintained through each anastomosis for 1 h. The vessels were then controlled, and anastomotic bursting pressure was determined with infusion of heparinized blood.

RESULTS

An additional hemostatic suture was required in 3 LW anastomoses (2 LW, 1 LW with collagen). Mean bursting pressures (mm Hg) of the arterial anastomoses were as follows: sutured controls 165 +/- 159, LW 144 +/- 58, LW and collagen 93 +/- 47, LW and fibrin sealant 181 +/- 45.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

未标注

本研究评估了使用圣犹大生物聚合物血管移植物建立的激光焊接动静脉分流的强度。生物移植物的动脉吻合口在添加或不添加可溶性胶原蛋白或纤维蛋白密封剂的情况下进行激光焊接。在4只犬中,使用6厘米长、内径4毫米的假体在股动脉与静脉或颈动脉与颈静脉之间植入16个动静脉移植物。16个动脉吻合口被平均分为四组:缝合对照组、激光焊接组(LW)、在焊接前及焊接过程中立即应用可溶性胶原蛋白的LW组、以及焊接后应用纤维蛋白密封剂的LW组。所有动脉对照组和静脉吻合口均使用连续的6-0聚丙烯缝线缝合。所有LW吻合口最初使用6根等距的6-0聚丙烯定位缝线分为6个5毫米长的节段。每个节段使用通过300微米光纤输送的0.5瓦(7.5瓦/平方厘米)氩激光能量进行15至18次5秒脉冲的激光焊接,同时用慢滴生理盐水冲洗对组织进行冷却。通过每个吻合口建立并维持血流1小时。然后控制血管,通过注入肝素化血液测定吻合口破裂压力。

结果

3个LW吻合口(2个LW组,1个LW加胶原蛋白组)需要额外的止血缝线。动脉吻合口的平均破裂压力(毫米汞柱)如下:缝合对照组165±159,LW组144±58,LW加胶原蛋白组93±47,LW加纤维蛋白密封剂组181±45。(摘要截断于250字)

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